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由恶臭假单胞菌甲苯双加氧酶催化的苄基单加氧反应。

Benzylic monooxygenation catalyzed by toluene dioxygenase from Pseudomonas putida.

作者信息

Wackett L P, Kwart L D, Gibson D T

机构信息

Center for Applied Microbiology, University of Texas, Austin 78712.

出版信息

Biochemistry. 1988 Feb 23;27(4):1360-7. doi: 10.1021/bi00404a041.

Abstract

Toluene dioxygenase, a multicomponent enzyme system known to oxidize mononuclear aromatic hydrocarbons to cis-dihydrodiols, oxidized indene and indan to 1-indenol and 1-indanol, respectively. In addition, the enzyme catalyzed dioxygen addition to the nonaromatic double bond of indene to form cis-1,2-indandiol. The oxygen atoms in 1-indenol and cis-1,2-indandiol were shown to be derived from molecular oxygen, whereas 70% of the oxygen in 1-indanol was derived from water. All of the isolated products were optically active as demonstrated by 19F NMR and HPLC discrimination of diastereomeric esters and by chiroptic methods. The high optical purity of (-)-(1R)-indanol (84% enantiomeric excess) and the failure of scavengers of reactive oxygen species to inhibit the monooxygenation reaction supported the contention that the monooxygen insertion is mediated by an active-site process. Experiments with 3-[2H]indene indicated that equilibration between C-1 and C-3 occurred prior to the formation of the carbon-oxygen bond to yield 1-indenol. Naphthalene dioxygenase also oxidized indan to 1-indanol, which suggested that benzylic monoxygenation may be typical of this group of dioxygenases.

摘要

甲苯双加氧酶是一种已知能将单核芳烃氧化为顺式二氢二醇的多组分酶系统,它将茚和茚满分别氧化为1-茚醇和1-茚满醇。此外,该酶催化将氧分子加成到茚的非芳香双键上,形成顺式-1,2-茚二醇。结果表明,1-茚醇和顺式-1,2-茚二醇中的氧原子来源于分子氧,而1-茚满醇中70%的氧来源于水。通过19F NMR以及非对映体酯的HPLC鉴别和旋光方法证明,所有分离得到的产物均具有光学活性。(-)-(1R)-茚满醇的高光学纯度(对映体过量84%)以及活性氧清除剂未能抑制单加氧反应,支持了单氧插入是由活性位点过程介导的观点。用3-[2H]茚进行的实验表明,在碳-氧键形成产生1-茚醇之前,C-1和C-3之间发生了平衡。萘双加氧酶也将茚满氧化为1-茚满醇,这表明苄基单加氧可能是这类双加氧酶的典型反应。

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